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CHO 细胞合成生物学中重组基因转录的精确控制。

Precision control of recombinant gene transcription for CHO cell synthetic biology.

机构信息

Department of Chemical and Biological Engineering, University of Sheffield, Sheffield S1 3JD, England, United Kingdom.

Department of Chemical and Biological Engineering, University of Sheffield, Sheffield S1 3JD, England, United Kingdom.

出版信息

Biotechnol Adv. 2016 Sep-Oct;34(5):492-503. doi: 10.1016/j.biotechadv.2015.12.012. Epub 2015 Dec 23.

Abstract

The next generation of mammalian cell factories for biopharmaceutical production will be genetically engineered to possess both generic and product-specific manufacturing capabilities that may not exist naturally. Introduction of entirely new combinations of synthetic functions (e.g. novel metabolic or stress-response pathways), and retro-engineering of existing functional cell modules will drive disruptive change in cellular manufacturing performance. However, before we can apply the core concepts underpinning synthetic biology (design, build, test) to CHO cell engineering we must first develop practical and robust enabling technologies. Fundamentally, we will require the ability to precisely control the relative stoichiometry of numerous functional components we simultaneously introduce into the host cell factory. In this review we discuss how this can be achieved by design of engineered promoters that enable concerted control of recombinant gene transcription. We describe the specific mechanisms of transcriptional regulation that affect promoter function during bioproduction processes, and detail the highly-specific promoter design criteria that are required in the context of CHO cell engineering. The relative applicability of diverse promoter development strategies are discussed, including re-engineering of natural sequences, design of synthetic transcription factor-based systems, and construction of synthetic promoters. This review highlights the potential of promoter engineering to achieve precision transcriptional control for CHO cell synthetic biology.

摘要

下一代用于生物制药生产的哺乳动物细胞工厂将经过基因工程改造,具有通用和产品特异性的制造能力,而这些能力可能不是天然存在的。引入全新的合成功能组合(例如新型代谢或应激反应途径),以及对现有功能细胞模块进行逆向工程,将推动细胞制造性能的颠覆性变革。然而,在我们能够将合成生物学的核心概念(设计、构建、测试)应用于 CHO 细胞工程之前,我们必须首先开发实用且强大的使能技术。从根本上说,我们将需要能够精确控制我们同时引入宿主细胞工厂的众多功能组件的相对化学计量比。在这篇综述中,我们讨论了如何通过设计工程启动子来实现这一点,这些启动子能够协调控制重组基因的转录。我们描述了影响生物生产过程中启动子功能的转录调节的具体机制,并详细介绍了在 CHO 细胞工程背景下所需的高度特异性启动子设计标准。讨论了各种启动子开发策略的相对适用性,包括天然序列的重新工程、基于合成转录因子系统的设计以及合成启动子的构建。这篇综述强调了启动子工程在实现 CHO 细胞合成生物学的精确转录控制方面的潜力。

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